首页> 美国卫生研究院文献>Nucleic Acids Research >U6 snRNA genes of Arabidopsis are transcribed by RNA polymerase III but contain the same two upstream promoter elements as RNA polymerase II-transcribed U-snRNA genes.
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U6 snRNA genes of Arabidopsis are transcribed by RNA polymerase III but contain the same two upstream promoter elements as RNA polymerase II-transcribed U-snRNA genes.

机译:拟南芥的U6 snRNA基因被RNA聚合酶III转录但包含与RNA聚合酶II转录的U-snRNA基因相同的两个上游启动子元件。

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摘要

Previously we have demonstrated that the U2 snRNA genes from the higher plant Arabidopsis thaliana contain two upstream elements, the USE with sequence RTCCCACATCG and a -30 'TATA' box, which are essential for transcription by RNA polymerase II, and that the conserved spacing of about four helical DNA turns between these elements is important for optimal promoter function. We have now isolated three genes encoding U6 RNA in Arabidopsis. Transcription of these genes in transfected protoplasts of Nicotiana plumbaginifolia is resistant to alpha-amanitin indicating that they are transcribed by RNA polymerase III. The upstream regions of three Arabidopsis U6 genes contain USE and -30 TATA-like elements similar to those found to be important for transcription of U2 RNA genes but the spacing between the two elements is about 10 bp closer than in the U2 genes. Using synthetic U6 genes we demonstrate that the USE and TATA elements are indispensable for their transcription, the TATA boxes of U2 and U6 genes are interchangeable, and that the intragenic A box-like sequence of U6 gene is not essential. Increasing the distance between the USE and TATA by 10 bp inactivates U6 gene transcription, demonstrating that proper positioning of the elements is also important for transcription by RNA polymerase III. The data indicate that the structure of U-snRNA gene promoters and the determinants of polymerase specificity are completely different between vertebrates and plants.
机译:先前我们已经证明来自高等植物拟南芥的U2 snRNA基因包含两个上游元件,具有序列RTCCCACATCG的USE和一个-30'TATA'盒,这对于RNA聚合酶II的转录是必不可少的,并且这些元件之间的大约四个螺旋DNA匝对于最佳启动子功能很重要。现在我们已经分离出了拟南芥中编码U6 RNA的三个基因。这些基因在烟叶烟草原生质体的转染中对α-阿马尼汀具有抗性,表明它们被RNA聚合酶III转录。三个拟南芥U6基因的上游区域包含USE和-30 TATA样元件,类似于发现对U2 RNA基因的转录很重要的元件,但两个元件之间的间隔比U2基因小约10 bp。使用合成的U6基因,我们证明USE和TATA元件对于它们的转录是必不可少的,U2和U6基因的TATA盒是可互换的,并且U6基因的基因内A盒样序列不是必需的。将USE和TATA之间的距离增加10 bp会失活U6基因的转录,这表明元素的正确定位对于RNA聚合酶III的转录也很重要。数据表明,脊椎动物和植物之间U-snRNA基因启动子的结构和聚合酶特异性的决定因素完全不同。

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